US8319136B2

Arcing fault and arc flash protection system having a high-speed switch

Summary by NHIP

Evacuated housing arc terminator

The device uses a high-voltage pulse to create a secondary arc across a gap before main contacts engage. This shunts fault current through a sealed, evacuated housing containing a movable switch and an exposed trigger conductor.

Claim Score by NHIP

Read claim 9, the broadest

Abstract

A high-speed arc terminator for an electrical power distribution system includes a sealed, evacuated housing, and a controllable mechanical switch having first and second electrically conductive contacts enclosed within the housing and adapted to be coupled to the power distribution system outside the housing. A trigger conductor extends into the housing and has an exposed end near the gap between the contacts when the contacts are in the open position. At least one of the contacts is movable between an open position in which the contacts are separated by a gap, and a closed position in which the contacts engage each other, and an operating mechanism is provided for moving the at least one contact between the open and closed positions. A high voltage source is controllably coupled to the trigger conductor for supplying a high-voltage pulse to the trigger conductor in response to the detection of an arcing fault. The high-voltage pulse produces an arc within the gap between the contacts, to shunt fault current from the power distribution system across the gap, from one of the contacts to the other, before the contacts engage each other.

US8319136B2, drawing sheet 1
Sheet 1 of 5

Term

4.3 yearsleft in the term

Expires 27 January 2031, including 212 days of term adjustment.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

18 claims: 6 independent, 12 dependent

  1. 1
    A high-speed arc terminator for an electrical power distribution system, the arc terminator comprising:a sealed, evacuated housing, a controllable mechanical switch having first and second electrically conductive contacts enclosed within said housing and adapted to be coupled to said power distribution system outside said housing, at least one of said contacts being movable between an open position in which said contacts are separated by a gap, and a closed position in which said contacts engage each other, to divert fault current in said power distribution system to a low impedance path when an arcing fault is detected, a trigger conductor extending into said housing and having an exposed end near said gap between said contacts when said contacts are in said open position, and a high voltage source controllably coupled to said trigger conductor for supplying a high-voltage pulse to said trigger conductor in response to the detection of an arcing fault, said high-voltage pulse producing a secondary arc between said trigger conductor and at least one of said first and second conductive contacts within said gap to shunt fault current from said power distribution system across said gap, from one of said contacts to the other, before said contacts engage each other.
  2. 3
    A high-speed arc terminator for an electrical power distribution system, the arc terminator comprising:a sealed, evacuated housing, a controllable mechanical switch having first and second electrically conductive contacts enclosed within said housing and adapted to be coupled to said power distribution system outside said housing, at least one of said contacts being movable between an open position in which said contacts are separated by a gap, and a closed position in which said contacts engage each other, to divert fault current in said power distribution system to a low impedance path when an arcing fault is detected, a trigger conductor extending into said housing and having an exposed end near said gap between said contacts when said contacts are in said open position, and a high voltage source controllably coupled to said trigger conductor for supplying a high-voltage pulse to said trigger conductor in response to the detection of an arcing fault, said high-voltage pulse producing a secondary arc within said gap to shunt fault current from said power distribution system across said gap, from one of said contacts to the other, before said contacts engage each other, said first and second contacts having opposed surfaces, and said trigger conductor extending through said first contact with the end of said conductor extending beyond the end surface of said first contact opposing said second contact.
  3. 6
    high-speed arc terminator for an electrical power distribution system, the arc terminator comprising:a sealed, evacuated housing, a controllable mechanical switch having first and second electrically conductive contacts enclosed within said housing and adapted to be coupled to said power distribution system outside said housing, at least one of said contacts being movable between an open position in which said contacts are separated by a gap, and a closed position in which said contacts engage each other, to divert fault current in said power distribution system to a low impedance path when an arcing fault is detected, a trigger conductor extending into said housing and having an exposed end near said gap between said contacts when said contacts are in said open position, and a high voltage source controllably coupled to said trigger conductor for supplying a high-voltage pulse to said trigger conductor in response to the detection of an arcing fault, said high-voltage pulse producing a secondary arc within said gap to shunt fault current from said power distribution system across said gap, from one of said contacts to the other, before said contacts engage each other, said trigger conductor extending through a side wall of said housing generally perpendicular to an axis of motion of at least one movable contact.
  4. 9
    Broadest claimClaim Score 55, average(NHIP)A method of terminating an arcing fault condition in an electrical power distribution system, the method comprising a) providing a vacuum bottle having a sealed, evacuated housing and a controllable mechanical switch having first and second electrically conductive contacts enclosed within said housing and coupled to said power distribution system outside said housing, at least one of said contacts being movable between an open position in which said contacts are separated by a gap, and a closed position in which said contacts engage each other to divert fault current in said power distribution system to a low impedance path, b) detecting an arcing fault condition in said power distribution system, and in response to said detecting of an arcing fault, c) producing a secondary arc between said trigger conductor and at least one of said first and second conductive contacts within said gap to shunt fault current from said power distribution system through said gap, from one of said contacts to the other, before said contacts engage each other.
  5. 12
    A method of terminating an arcing fault condition in an electrical power distribution system, the method comprising a) providing a vacuum bottle having a sealed, evacuated housing and a controllable mechanical switch having first and second electrically conductive contacts enclosed within said housing and coupled to said power distribution system outside said housing, at least one of said contacts being movable between an open position in which said contacts are separated by a gap, and a closed position in which said contacts engage each other to divert fault current in said power distribution system to a low impedance path, and b) detecting an arcing fault condition in said power distribution system, in response to said detecting of an arcing fault, c) producing an arc within said gap to shunt fault current from said power distribution system through said gap, from one of said contacts to the other, before said contacts engage each other, said first and second contacts have opposed surfaces, and said trigger conductor extending through said first contact with the distal end of said conductor extending beyond the end surface of said first contact opposing said second contact.
  6. 14
    A method of terminating an arcing fault condition in an electrical power distribution system, the method comprising a) providing a vacuum bottle having a sealed, evacuated housing and a controllable mechanical switch having first and second electrically conductive contacts enclosed within said housing and coupled to said power distribution system outside said housing, at least one of said contacts being movable between an open position in which said contacts are separated by a gap, and a closed position in which said contacts engage each other to divert fault current in said power distribution system to a low impedance path, b) detecting an arcing fault condition in said power distribution system, in response to said detecting of an arcing fault, and c) producing an arc within said gap to shunt fault current from said power distribution system through said gap, from one of said contacts to the other, before said contacts engage each other, said trigger conductor extending through a side wall of said housing generally perpendicular to an axis of motion of at least one movable contact.